MPG Pendant Control suppliers

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summary:Chengdu Xinhecheng Technology: Reliable MPG Pendant Control suppliers, delivering precision and durable handheld controls for enhanced CNC machining operations.

MPG Pendant Control suppliers

 

WiXHC Wilress Electronic CNC Handwheel CNC Control Pendant with Rechargeable Functions (Model:DWGP)

1.Product Introduction

Wireless electronic handwheel is used for manual guidance, positioning, tool setting and

other operations of CNC machine tools. This product adopts wireless transmission technology,

eliminating the traditional spring wire connection, reducing equipment failures caused by cables,

eliminating the disadvantages of cable dragging, oil stains, etc., and is more convenient to

operate. It is widely used in CNC machine tools such as gantry machining centers, gantry

vertical lathes, CNC gear processing machines, and can be adapted to a variety of CNC

systems on the market, such as Siemens, Mitsubishi, Fanuc, syntec and other CNC system

brands.

 
2.Product features
1. Adopt 433MHZ wireless communication technology, wireless operation distance is 80 meters;
2. Adopt automatic frequency hopping function, use 32 sets of wireless remote controllers at the
same time without affecting each other;
3. Support emergency stop button, and after the handwheel is turned off, the emergency stop
button is still valid;
4. Support 6 custom buttons, switch IO signal output;
5. Support 6-axis control, 7-12 axis control can be customized;
6. Supports 1X,10X, 100X control and can be maximum customizable 1000X;
7. Supports the enable button function, which can output switch IO signals and control axis
selection, magnification and encoder;
8. Support axis selection and magnification selection encoder output;
9. Support standar



 

 

 

The MPG pendant control, often referred to as a handwheel or manual pulse generator, has become an indispensable interface in computer numerical control (CNC) machining and other industrial automation. This portable device empowers operators with a high degree of manual control over machine tools, bridging the gap between automated programming and manual intervention. The ergonomic design and precise functionality of the MPG pendant control make it a critical tool for setup, teaching, and troubleshooting processes, enhancing both flexibility and productivity on the shop floor.

A primary advantage of utilizing an MPG pendant control is the significant enhancement in operational efficiency and setup precision. During machine setup and workpiece alignment, operators can use the handwheel to manually guide axes with fine, incremental movements. This allows for meticulous positioning that might be cumbersome or less intuitive through pure code entry. The ability to "feel" the machine's movement through the MPG pendant control enables faster and more accurate tool setting, part zeroing, and fixture alignment, directly reducing non-cutting time and minimizing human error.

The intrinsic flexibility offered by this device is another major benefit. An MPG pendant control provides operators with the freedom to move around the machine, observing the process from the most advantageous angles. This mobility is crucial for verifying clearances, checking complex multi-axis movements, and conducting safe, controlled dry runs of new programs. By offering a direct and responsive manual override to automated cycles, the MPG pendant control grants machinists the adaptability needed to handle prototypes, complex geometries, or small-batch jobs that require frequent intervention and verification.

From a safety and training perspective, the MPG pendant control serves as a vital tool. It allows for slow, controlled manual operation, which is essential when training new personnel on machine functions and safe operating procedures. The incremental feed capability, often selectable in different step resolutions (e.g., x1, x10, x100), ensures movements can be made slowly and predictably. This controlled environment helps in preventing crashes and allows operators to cautiously probe limits or recover from unforeseen situations, thereby protecting both the valuable machine tool and the workpiece.

 

 

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